Insights into the Role of Circadian Rhythms in Bone Metabolism: A Promising Intervention Target?
Autor: | Chanyi Lu, Zheng Zhang, Honglei Kang, Huiyong Liu, Hanfeng Guan, Feng Li, Jia Wang, Brett Kim, Zhong Fang, Chao Song, Yunlong Sun |
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Jazyk: | angličtina |
Rok vydání: | 2018 |
Předmět: |
0301 basic medicine
medicine.medical_specialty Circadian clock Osteoporosis lcsh:Medicine Review Article Biology Bone and Bones General Biochemistry Genetics and Molecular Biology Bone remodeling Melatonin 03 medical and health sciences Osteoclast Circadian Clocks Internal medicine medicine Animals Homeostasis Humans Circadian rhythm General Immunology and Microbiology Suprachiasmatic nucleus lcsh:R General Medicine medicine.disease Circadian Rhythm Postmenopause CLOCK 030104 developmental biology medicine.anatomical_structure Endocrinology medicine.drug |
Zdroj: | BioMed Research International, Vol 2018 (2018) BioMed Research International |
ISSN: | 2314-6141 2314-6133 |
Popis: | Numerous physiological processes of mammals, including bone metabolism, are regulated by the circadian clock system, which consists of a central regulator, the suprachiasmatic nucleus (SCN), and the peripheral oscillators of the BMAL1/CLOCK-PERs/CRYs system. Various bone turnover markers and bone metabolism-regulating hormones such as melatonin and parathyroid hormone (PTH) display diurnal rhythmicity. According to previous research, disruption of the circadian clock due to shift work, sleep restriction, or clock gene knockout is associated with osteoporosis or other abnormal bone metabolism, showing the importance of the circadian clock system for maintaining homeostasis of bone metabolism. Moreover, common causes of osteoporosis, including postmenopausal status and aging, are associated with changes in the circadian clock. In our previous research, we found that agonism of the circadian regulators REV-ERBs inhibits osteoclast differentiation and ameliorates ovariectomy-induced bone loss in mice, suggesting that clock genes may be promising intervention targets for abnormal bone metabolism. Moreover, osteoporosis interventions at different time points can provide varying degrees of bone protection, showing the importance of accounting for circadian rhythms for optimal curative effects in clinical treatment of osteoporosis. In this review, we summarize current knowledge about circadian rhythms and bone metabolism. |
Databáze: | OpenAIRE |
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